The transcription factor Pax6 has been reported to specify neural progenitor cell fates during development and maintain neuronal commitments in the adult. The spatiotemporal patterns of Pax6 expression were examined in sagittal and horizontal sections of the embryonic, postnatal, and adult brains using immunohistochemistry and double immunolabeling. The proportion of Pax6-immunopositive cells in various parts of the adult brain was estimated using the isotropic fractionator methodology. It was shown that at embryonic day 11 (E11) Pax6 was robustly expressed in the proliferative neuroepithelia of the ventricular zone in the forebrain and hindbrain, and in the floor and the mesencephalic reticular formation (mRt) in the midbrain. At E12, its ...
The development of the central nervous system relies on the tight regulation of the neural progenito...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
During brain embryogenesis, transcription factors drive stem cells towards neuronal fate. Here we sh...
Different paired-box transcription factors control various aspects of cell fate during organ develop...
Pax6 is a sequence-specific DNA binding transcription factor that positively and negatively regulate...
The ventricular zone (VZ) of the embryonic dorsal telencephalon is a major site for generating corti...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Generation of the brain depends on proper regulation of progenitor proliferation and differentiation...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Pax6 encodes a highly conserved transcriptional regulator that is widely expressed during developmen...
AbstractMutations in the Pax6 gene disrupt telencephalic development, resulting in a thin cortical p...
The ventricular zone (VZ) of the embryonic dorsal telencephalon is a major site for generating corti...
The development of the central nervous system relies on the tight regulation of the neural progenito...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
During brain embryogenesis, transcription factors drive stem cells towards neuronal fate. Here we sh...
Different paired-box transcription factors control various aspects of cell fate during organ develop...
Pax6 is a sequence-specific DNA binding transcription factor that positively and negatively regulate...
The ventricular zone (VZ) of the embryonic dorsal telencephalon is a major site for generating corti...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Generation of the brain depends on proper regulation of progenitor proliferation and differentiation...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Pax6 encodes a highly conserved transcriptional regulator that is widely expressed during developmen...
AbstractMutations in the Pax6 gene disrupt telencephalic development, resulting in a thin cortical p...
The ventricular zone (VZ) of the embryonic dorsal telencephalon is a major site for generating corti...
The development of the central nervous system relies on the tight regulation of the neural progenito...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...